The 5G technology has tapped into millimeter wave (mmWave) spectrum to create additional bandwidth for improved network capacity. The use of mmWave for specific applications including vehicular networks has widely discussed. However, applying mmWave to vehicular networks faces challenges of high mobility nodes and narrow coverage along the mmWave beams. In this paper, we focus on a mmWave small cell base station deployed in a city area to support vehicular network application. We propose profiling vehicle mobility for a machine learning agent to learn the performance of serving vehicles with different mobility profiles and utilize the past experiences to select appro- priate mmWave beam to service a vehicle. Our machine learning agent is ba...
Millimeter-wave (mmWave) communication technology offers a potential and promising solution to suppo...
Harnessing the substantial bandwidth available at millimeter wave (mmWave) carrier frequencies has p...
In this paper, we study wireless communications in vehicle-to-infrastructure communications. In cert...
Millimeter-wave (MmWave) vehicular communication enables massive sensor data sharing and various eme...
Directional communication is helpful to improve the performance of millimeter Wave (mmWave) links. H...
In intelligent transportation systems (ITS), vehicles are expected to feature with advanced applicat...
Future vehicular communication networks call for new solutions to support their capacity demands, by...
5G networks explore mmWave technology to achieve faster data transfer and higher network capacity. T...
Abstract—Vehicular wireless channels have a high degree of variability, presenting a challenge for v...
Millimeter-wave communication is widely seen as a promising option to increase the capacity of vehic...
The integration of sub-6 GHz and millimeter wave (mmWave) bands has a great potential to enable bot...
Increasing numbers of users together with a more use of high bit-rate services complicate radio reso...
In the 5G network, dense deployment of small cells and utilisation of millimetre wave (mmWave) band ...
The 5G technology is predicted to achieve the unoptimized millimeter Wave (mmWave) of 30-300 GHz ban...
The capability of smarter networked devices to dynamically select appropriate radio connectivity opt...
Millimeter-wave (mmWave) communication technology offers a potential and promising solution to suppo...
Harnessing the substantial bandwidth available at millimeter wave (mmWave) carrier frequencies has p...
In this paper, we study wireless communications in vehicle-to-infrastructure communications. In cert...
Millimeter-wave (MmWave) vehicular communication enables massive sensor data sharing and various eme...
Directional communication is helpful to improve the performance of millimeter Wave (mmWave) links. H...
In intelligent transportation systems (ITS), vehicles are expected to feature with advanced applicat...
Future vehicular communication networks call for new solutions to support their capacity demands, by...
5G networks explore mmWave technology to achieve faster data transfer and higher network capacity. T...
Abstract—Vehicular wireless channels have a high degree of variability, presenting a challenge for v...
Millimeter-wave communication is widely seen as a promising option to increase the capacity of vehic...
The integration of sub-6 GHz and millimeter wave (mmWave) bands has a great potential to enable bot...
Increasing numbers of users together with a more use of high bit-rate services complicate radio reso...
In the 5G network, dense deployment of small cells and utilisation of millimetre wave (mmWave) band ...
The 5G technology is predicted to achieve the unoptimized millimeter Wave (mmWave) of 30-300 GHz ban...
The capability of smarter networked devices to dynamically select appropriate radio connectivity opt...
Millimeter-wave (mmWave) communication technology offers a potential and promising solution to suppo...
Harnessing the substantial bandwidth available at millimeter wave (mmWave) carrier frequencies has p...
In this paper, we study wireless communications in vehicle-to-infrastructure communications. In cert...